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在没有海马体的情况下获得的情境恐惧、情境辨别和物体辨别记忆的完整行为表达。

Intact Behavioral Expression of Contextual Fear, Context Discrimination, and Object Discrimination Memories Acquired in the Absence of the Hippocampus.

机构信息

Department of Neuroscience, Canadian Centre for Behavioural Neuroscience, The University of Lethbridge, Lethbridge, Alberta T1K 3M4, Canada

Sunnybrook Research Institute, Sunnybrook Health Sciences Centre, Toronto, Ontario M4N 3M5, Canada.

出版信息

J Neurosci. 2021 Mar 17;41(11):2437-2446. doi: 10.1523/JNEUROSCI.0546-20.2020. Epub 2020 Dec 10.

Abstract

We test the hypothesis that the stability and precision of context and visual discrimination memories depend on interactions between the hippocampus (HPC) and other memory storage networks. In four experiments we tested the properties of memories acquired in the absence of the HPC. Long-Evans male rats were exclusively used in all experiments. Experiment 1 evaluated acquisition and retention of context fear memories in rats with prior partial or complete HPC damage. Confirming an earlier report (Zelikowsky et al., 2012) a very small but statistically reliable slowing in a single session of context fear conditioning was found after HPC damage. In contrast, retention of context fear memory was normal after HPC damage up to 30 d after learning. In experiment 2, we found that discrimination between a context paired with foot shocks and a different context never paired with foot shock was retained normally for 15 d. In experiment 3, we replicated the finding of intact context discrimination for at least 15 d in rats who display a significant impairment in acquisition of place learning in the Morris water task (MWT). In final experiment using an appetitive object discrimination task, we showed normal retention of the discrimination for at least 30 d after training in rats with complete HPC damage. These finding score against the idea that non HPC memory storage requires a period of interaction with HPC to establish a stable, precise memory. Contrary to expectations from systems memory consolidation, we find that in the absence of a functional hippocampus (HPC) context and visual memories are formed rapidly and exhibit normal persistence and precision. The findings suggest that the HPC is not obligatory for these features of long-term memories.

摘要

我们检验了这样一个假设,即上下文和视觉辨别记忆的稳定性和精度取决于海马体(HPC)与其他记忆存储网络之间的相互作用。在四项实验中,我们测试了在没有 HPC 的情况下获得的记忆的特性。所有实验均使用长耳雄性大鼠。实验 1 评估了先前有部分或完全 HPC 损伤的大鼠中海马体缺失或受损后获得和保留情景恐惧记忆的情况。正如早期报告(Zelikowsky 等人,2012)所证实的那样,在 HPC 损伤后,在单次情景恐惧条件反射中发现了一个非常小但具有统计学意义的速度减慢。相比之下,在学习后 30 天内,HPC 损伤后情景恐惧记忆的保留是正常的。在实验 2 中,我们发现,与脚部电击配对的环境与从未与脚部电击配对的不同环境之间的辨别能力在 15 天内保持正常。在实验 3 中,我们复制了在莫里斯水迷宫任务(MWT)中表现出明显的位置学习获得障碍的大鼠中,至少在 15 天内保留了完整的情景辨别能力的发现。在最后一项使用奖赏性物体辨别任务的实验中,我们发现,在完全 HPC 损伤的大鼠中,在训练后至少 30 天内,对辨别能力的保留是正常的。这些发现与非 HPC 记忆存储需要与 HPC 交互一段时间以建立稳定、精确记忆的观点相悖。与系统记忆巩固的预期相反,我们发现,在没有功能性海马体(HPC)的情况下,情景和视觉记忆会迅速形成,并表现出正常的持久性和精确性。这些发现表明,HPC 不是这些长期记忆特征所必需的。

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